序列重建问题及其在dna存储中的应用综述

IF 2.2
Yaoyu Yang
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引用次数: 0

摘要

在DNA测序中,我们经常需要从其损坏副本的集合中推断出未知序列。由于DNA断裂、点突变和测量误差,每个副本不能忠实地告诉真相。因此,独特重建的理论保证值得关注。这激发了三十年前序列重建问题的研究。近年来,合成DNA被认为是一种超高密度的数据存储介质。序列重构是实现可靠、高效数据读取的关键步骤。在这个调查中,我们主要总结了两种类型的问题,从子序列或子字符串重建,在组合和概率设置。同时,我们讨论了可能有助于未来基于dna的数据存储系统发展的代码和算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Survey of Sequence Reconstruction Problems and Their Applications in DNA-Based Storage
In DNA sequencing, we often need to infer an unknown sequence from a collection of its corrupted copies. Each copy cannot faithfully tell the truth due to DNA fragmentation, point mutations, and measurement errors. The theoretical guarantee of unique reconstruction is thus of concern. This motivated the study of sequence reconstruction problems three decades ago. Recently, synthetic DNA has been regarded as an ultra-dense data storage medium. Sequence reconstruction is a crucial step in achieving reliable and efficient data readout. In this survey, we summarize mainly two types of problems, reconstruction from subsequences or substrings, in both combinatorial and probabilistic settings. Meanwhile, we discuss codes and algorithms that may assist with the future development of DNA-based data storage systems.
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